Nonlinear mechanics at the apex of the guinea-pig cochlea
暂无分享,去创建一个
[1] Comparison of the tuning of outer hair cells and the basilar membrane in the isolated cochlea. , 1989, Acta oto-laryngologica. Supplementum.
[2] W. S. Rhode,et al. Some observations on cochlear mechanics. , 1978, The Journal of the Acoustical Society of America.
[3] W. S. Rhode,et al. Evidence from Mössbauer experiments for nonlinear vibration in the cochlea. , 1974, The Journal of the Acoustical Society of America.
[4] P. Sellick,et al. The responses of inner hair cells to basilar membrane velocity during low frequency auditory stimulation in the guinea pig cochlea , 1980, Hearing Research.
[5] W. S. Rhode,et al. Basilar membrane mechanics in the hook region of cat and guinea-pig cochleae: Sharp tuning and nonlinearity in the absence of baseline position shifts , 1992, Hearing Research.
[6] William F. Sewell,et al. The effects of furosemide on the endocochlear potential and auditory-nerve fiber tuning curves in cats , 1984, Hearing Research.
[7] Peter Dallos,et al. Neurobiology of cochlear inner and outer hair cells: intracellular recordings , 1986, Hearing Research.
[8] B M Johnstone,et al. Middle-ear function in the guinea pig. , 1974, The Journal of the Acoustical Society of America.
[9] E. D. Boer,et al. Auditory physics. Physical principles in hearing theory. III , 1984 .
[10] B. M. Johnstone,et al. Measurement of basilar membrane motion in the guinea pig using the Mössbauer technique. , 1982, The Journal of the Acoustical Society of America.
[11] Travel time in the cochlea and its determination from cochlear-microphonic data. , 1971, The Journal of the Acoustical Society of America.
[12] P Kuyper,et al. Triggered correlation. , 1968, IEEE transactions on bio-medical engineering.
[13] G. K. Yates,et al. Cochlear action potential threshold and single unit thresholds. , 1979, The Journal of the Acoustical Society of America.
[14] Effects of glutaraldehyde and metabolic inhibitors on the vibratory responses in the isolated cochlea. , 1989, Acta oto-laryngologica. Supplementum.
[15] Vera F. Prijs,et al. Lower boundaries of two-tone suppression regions in the guinea pig , 1989, Hearing Research.
[16] J R Johnstone,et al. Basilar membrane and middle-ear vibration in guinea pig measured by capacitive probe. , 1975, The Journal of the Acoustical Society of America.
[17] Shyam M. Khanna,et al. Frequency-specific position shift in the guinea pig organ of Corti , 1991, Neuroscience Letters.
[18] A. Flock,et al. Sound induced displacement response of the guinea pig hearing organ and its relation to the cochlear potentials , 1992, Hearing Research.
[19] D O Kim,et al. Response patterns of single cochlear nerve fibers to click stimuli: descriptions for cat. , 1972, The Journal of the Acoustical Society of America.
[20] L. Robles,et al. Basilar membrane mechanics at the base of the chinchilla cochlea. I. Input-output functions, tuning curves, and response phases. , 1986, The Journal of the Acoustical Society of America.
[21] W. S. Rhode. Observations of the vibration of the basilar membrane in squirrel monkeys using the Mössbauer technique. , 1971, The Journal of the Acoustical Society of America.
[22] D. Mountain,et al. Mechanical Coupling between Inner and Outer Hair Cells in the Mammalian Cochlea , 1989 .
[23] William S. Rhode,et al. AN INVESTIGATION OF POST-MORTEM COCHLEAR MECHANICS USING THE MÖSSBAUER EFFECT , 1973 .
[24] S. M. Khanna,et al. The tuned displacement response of the hearing organ is generated by the outer hair cells , 1992, Neuroscience.
[25] Shyam M. Khanna,et al. Effects of opening and resealing the cochlea on the mechanical response in the isolated temporal bone preparation , 1991, Hearing Research.
[26] Cochlear Nonlinearities Reflected in Inner Hair Cell Responses , 1989 .
[27] J. Zwislocki. Analysis of cochlear mechanics , 1986, Hearing Research.
[28] M. Charles Liberman,et al. Single unit clues to cochlear mechanisms , 1986, Hearing Research.
[29] William S. Rhode. Cochlear partition vibration—Recent views , 1979 .
[30] Edwin C. Moxon,et al. Physiological Considerations in Artificial Stimulation of the Inner Ear , 1972, The Annals of otology, rhinology, and laryngology.
[31] David J. Anderson,et al. Temporal Position of Discharges in Single Auditory Nerve Fibers within the Cycle of a Sine‐Wave Stimulus: Frequency and Intensity Effects , 1971 .
[32] Jozef J. Zwislocki. Five decades of research on cochlear mechanics , 1979 .
[33] D Robertson,et al. Tuning in the mammalian cochlea. , 1988, Physiological reviews.
[34] L. Carney,et al. Temporal coding of resonances by low-frequency auditory nerve fibers: single-fiber responses and a population model. , 1988, Journal of neurophysiology.
[35] S M Khanna,et al. Dependence of cellular responses on signal level. , 1989, Acta oto-laryngologica. Supplementum.
[36] G. K. Yates,et al. Nonlinear input-output functions derived from the responses of guinea-pig cochlear nerve fibres: Variations with characteristic frequency , 1994, Hearing Research.
[37] G. Békésy,et al. Experiments in Hearing , 1963 .